4.8 Article

Photocatalytic decomposition and oxidation of dimethyl ether over Au/TiO2

Journal

JOURNAL OF CATALYSIS
Volume 313, Issue -, Pages 127-134

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.jcat.2014.03.005

Keywords

Dimethyl ether; Photocatalytic decomposition and oxidation; Production of H-2 free of CO; Au-promoted TiO2; Lowering the bandgap of TiO2; Photocatalytic reactions in visible light

Funding

  1. Grant OTKA [K 81517]
  2. TAMOP [4.2.2.A-11/1/KONV-2012-0047]

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The photocatalytic vapor-phase decomposition and oxidation of dimethyl ether were investigated on pure and Au-promoted TiO2. Infrared spectroscopic studies revealed that dimethyl ether adsorbed on TiO2-based catalysts undergoes partial dissociation to methoxy. Illumination induced a surface reaction and led to the formation of formate species. Whereas pure TiO2 exhibited only a slight photoactivity, the deposition of Au on TiO2 significantly enhanced the extent of the photocatalytic decomposition to yield H-2 and CO2 with a small amount of CO. Addition of H2O increased the extent of photocatalytic decomposition and eliminated the CO formed. A very high catalytic effect of Au/TiO2 was observed in the photocatalytic oxidation of dimethyl ether to produce Hy free of CO. When the bandgap of the TiO2 support was lowered by N-doping from 3.02 eV to 1.98 eV, the photocatalytic decomposition and oxidation of dimethyl ether were observed even in visible light. (C) 2014 Elsevier Inc. All rights reserved.

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